Developing novel thin film composite membrane on a permeate spacer backing fabric for forward osmosis
Autor: | Nasim Fadaie, Soleyman Sahebi, Bahman Ramavandi, Javad Baniasadi, Shuaifei Zhao, Toraj Mohammadi, Mohammad Sheikhi |
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Rok vydání: | 2020 |
Předmět: |
chemistry.chemical_classification
Materials science Polyvinylpyrrolidone General Chemical Engineering Forward osmosis Pressure-retarded osmosis Composite number 02 engineering and technology General Chemistry Polymer 010501 environmental sciences 01 natural sciences Interfacial polymerization Membrane 020401 chemical engineering chemistry Thin-film composite membrane medicine 0204 chemical engineering Composite material 0105 earth and related environmental sciences medicine.drug |
Zdroj: | Chemical Engineering Research and Design. 160:326-334 |
ISSN: | 0263-8762 |
DOI: | 10.1016/j.cherd.2020.04.035 |
Popis: | A repeatable method was introduced for developing liable flat sheet thin-film forward osmosis (FO) membranes on spacer backing fabric support. Pasting of a water-soluble polymer (Polyvinylpyrrolidone (PVP)) on the backside of the fabric was investigated to prevent the penetration of the polymer dope (Polyethersulfone (PES)) into the backing fabric during phase inversion. All samples were prepared on spacer fabric with a 250 μm in thickness. First, PVP as a water-soluble polymer was cast in 100 μm thickness on a glass plate and then the spacer fabric was pulled from the top on the pasted PVP to fill the bottom side of the fabric. The lower bottom side of the fabric was filled with PVP. This helped to limit PES polymer penetration and to achieve a thinner polymeric support layer during phase inversion. After interfacial polymerization and forming rejection, thin-film composite (TFC) FO membranes were obtained. Water flux of 17.1 Lm−2h−1 and reverse solute flux (RSF) of 9.2 g m−2h−1 were achieved when 1 M NaCl as draw solution and deionized water as feed solution (FS) were used under pressure retarded osmosis (PRO) operating mode for TFC2 sample. |
Databáze: | OpenAIRE |
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